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The role of sorting nexin 10 (Snx10) in control of osteoclast function and regulation of bone homeostasis.

机译:分类神经毒素10(Snx10)在控制破骨细胞功能和调节骨稳态中的作用。

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摘要

Sorting Nexin 10 (Snx10) is expressed in osteoclasts and is required for osteoclastic bone resorption in vitro. To study the role of Snx10 in osteoclastic bone resorption and bone homeostasis in vivo, we investigated the expression of Snx10 and created mouse models in which Snx10 was deficient in osteoclasts or globally. Osteoclast-specific Snx10-deficient mice exhibited severe osteopetrosis with abnormal bone micro-architectural parameters in vivo, consistent with the failure of osteoclasts to normally resorb bone. Osteoclast-derived Snx10 deficiency didn't completely inhibit osteoclast formation, however, the capacity to resorb bone was significantly reduced. Intracellular vesicular transport, ruffled border formation and extracellular acidification were found to be severely impaired due to osteoclast-derived Snx10 deficiency. We also discovered that Snx10 was highly expressed in gastric zymogenic cells, with mutations leading to gastric dysfunction and low calcium solubilization. Global Snx10-deficiency in mice results in a combined phenotype: osteopetrosis (due to osteoclast defect) and rickets (due to gastric dysfunction and low calcium availability, resulting in impaired bone mineralization and hypocalcemia). Osteopetrorickets, the paradoxical association of insufficient mineralization in the context of a positive total body calcium balance, was thought to occur due to failure of the osteoclasts to maintain normal calcium homeostasis. However, osteoclast-specific Snx10 deficiency had no effect on calcium balance, and therefore led to severe osteopetrosis without rickets. Moreover, supplementation with calcium gluconate prevented the rachitic phenotype and rescued the early death in global Snx10-deficient mice, suggesting that this may be a life-saving component of the clinical approach to Snx10-dependent human ARO with hypocalcaemia and/or no improvement after HSCT. We concluded that tissue-specific effects of Snx10 mutation need to be considered in clinical approaches to this disease entity. Reliance solely on hematopoietic stem cell transplantation can leave hypocalcemia uncorrected with sometimes-fatal consequences.;To our knowledge, this is the first study to explore the role of Snx10 using the genetically modified mouse model. This study not only uncovered the cellular mechanism by which Snx10 regulates osteoclastic bone resorption but also established an essential role for Snx10 in bone homeostasis and underscore the importance of Snx10-dependent gastric function in calcium homeostasis.
机译:分选Nexin 10(Snx10)在破骨细胞中表达,是体外破骨细胞骨吸收所必需的。为了研究Snx10在体内破骨细胞骨吸收和骨稳态中的作用,我们调查了Snx10的表达并创建了其中Snx10缺乏破骨细胞或整体缺乏的小鼠模型。破骨细胞特异性Snx10缺陷小鼠在体内表现出严重的骨质疏松症,并具有异常的骨骼微结构参数,这与破骨细胞无法正常吸收骨骼的现象相一致。破骨细胞源性Snx10缺乏症不能完全抑制破骨细胞的形成,但是,吸收骨的能力明显降低。由于破骨细胞衍生的Snx10缺乏症,严重损害了细胞内水泡运输,皱纹边界形成和细胞外酸化。我们还发现Snx10在胃酶原细胞中高表达,其突变导致胃功能障碍和低钙溶解度。小鼠中的Snx10缺乏症综合表现为表型:骨质疏松症(由于破骨细胞缺损)和病(由于胃功能障碍和钙缺乏,导致骨矿化和低钙血症)。骨病是体内总钙平衡为正的情况下矿物质不足的悖论联系,被认为是由于破骨细胞不能维持正常的钙稳态而发生的。但是,破骨细胞特异性Snx10缺乏对钙平衡没有影响,因此导致严重的骨质疏松症,而没有病。此外,补充葡萄糖酸钙可预防轮状表型并挽救全球Snx10缺陷型小鼠的早期死亡,这表明这可能是挽救低血钙和/或治疗后无改善的Snx10依赖型人类ARO临床方法的一种挽救生命的组成部分。 HSCT。我们得出的结论是,在针对该疾病实体的临床方法中需要考虑Snx10突变的组织特异性作用。仅依靠造血干细胞移植可以使低钙血症得到纠正,有时甚至会造成致命的后果。据我们所知,这是首次使用转基因小鼠模型探索Snx10作用的研究。这项研究不仅揭示了Snx10调节破骨细胞骨吸收的细胞机制,而且确立了Snx10在骨稳态中的重要作用,并强调了Snx10依赖性胃功能在钙稳态中的重要性。

著录项

  • 作者

    Ye, Liang.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Molecular biology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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